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Thermopolarization Phenomena in the Temperature Range of Glass Transition of Amorphous Polydiethylsiloxane

机译:无定形聚二甲基硅氧烷玻璃化转变温度范围的热基极化现象

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The transition from the glass to the highly elastic state in polydiethylsiloxane (PDES) is not reflected on the temperature dependences of the relative permittivity, the dielectric loss tangent, and the specific volumetric electrical conductivity. But, the peak of the current of thermostimulated depolarization (TSD) is fixed in the temperature range of the transition to the highly elastic state. The peak of the TSD current at T ~ 130K indicates a continuous amorphous phase formation in the experimental conditions. The maximum value of the TSD current directly depends on the content of the amorphous phase in the polymer. The cooling of the polymer in an electric field reduces the magnitude of the peak. Exposure in the mesophase leads to an almost complete absence of thermopolarization effects near the glass transition temperature. This peak of the TSD current in the absence of preliminary polarization is characteristic, presumably, only for flexible-chain polymers where structural units have pyroelectric properties. Under certain conditions, PDES demonstrates itself as an active dielectric in the temperature range of 90 - 180K.
机译:从玻璃中的过渡到聚二甲基硅氧烷(PDE)中的高弹性状态不会反映在相对介电常数,介电损耗正切和特定体积电导率的温度依赖下。但是,热刺激性去极化(TSD)的电流峰值在过渡到高度弹性状态的温度范围内固定。 T〜130k的TSD电流的峰值表示实验条件下的连续无定形相。 TSD电流的最大值直接取决于聚合物中无定形相的含量。在电场中的聚合物冷却降低了峰的大小。在中间相的暴露导致在玻璃化转变温度附近几乎完全没有热基极化效应。在没有初始偏振的情况下,TSD电流的该峰值是特征,可能仅针对结构单元具有热电性的柔性链聚合物。在某些条件下,PDE在90-180K的温度范围内将其自身作为有源电介质。

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